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<title>Semiconductor Physics Quantum Electronics &amp; Optoelectronics, 2014, том 17</title>
<link href="http://dspace.nbuv.gov.ua:80/handle/123456789/114470" rel="alternate"/>
<subtitle/>
<id>http://dspace.nbuv.gov.ua:80/handle/123456789/114470</id>
<updated>2026-04-16T21:00:38Z</updated>
<dc:date>2026-04-16T21:00:38Z</dc:date>
<entry>
<title>Publication Ethics and Publication Malpractice Statement</title>
<link href="http://dspace.nbuv.gov.ua:80/handle/123456789/119222" rel="alternate"/>
<author>
<name/>
</author>
<id>http://dspace.nbuv.gov.ua:80/handle/123456789/119222</id>
<updated>2017-06-06T00:03:02Z</updated>
<published>2014-01-01T00:00:00Z</published>
<summary type="text">Publication Ethics and Publication Malpractice Statement
All editors, reviewers and authors, should be familiarized and take into account the Publication Ethics and&#13;
Publication Malpractice Statement of the international journal “Semiconductor Physics, Quantum Electronics and&#13;
Optoelectronics”. This statement is based on the COPE Code of Conduct for Journal Editors.
</summary>
<dc:date>2014-01-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>Publication Ethics and Publication Malpractice Statement</title>
<link href="http://dspace.nbuv.gov.ua:80/handle/123456789/119221" rel="alternate"/>
<author>
<name/>
</author>
<id>http://dspace.nbuv.gov.ua:80/handle/123456789/119221</id>
<updated>2017-06-06T00:02:45Z</updated>
<published>2014-01-01T00:00:00Z</published>
<summary type="text">Publication Ethics and Publication Malpractice Statement
All editors, reviewers and authors, should be familiarized and take into account the Publication Ethics and&#13;
Publication Malpractice Statement of the international journal “Semiconductor Physics, Quantum Electronics and&#13;
Optoelectronics”. This statement is based on the COPE Code of Conduct for Journal Editors.
</summary>
<dc:date>2014-01-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>A model for non-thermal action of microwave radiation on oxide film/semiconductor structures</title>
<link href="http://dspace.nbuv.gov.ua:80/handle/123456789/118513" rel="alternate"/>
<author>
<name>Okhrimenko, O.B.</name>
</author>
<id>http://dspace.nbuv.gov.ua:80/handle/123456789/118513</id>
<updated>2017-05-31T00:07:11Z</updated>
<published>2014-01-01T00:00:00Z</published>
<summary type="text">A model for non-thermal action of microwave radiation on oxide film/semiconductor structures
Okhrimenko, O.B.
A model is considered that explains mechanism of non-thermal action of&#13;
microwave radiation on the thin SiO₂ (ТiO₂, Er₂O₃, Gd₂O₃) film/SiC and SiO₂/GaAs&#13;
structures. It assumes that the centers of electron-hole recombination are redistributed&#13;
because of resonance interaction between dislocations of certain length and microwave&#13;
radiation. As a result, additional bands appear in photoluminescence (PL) spectra of the&#13;
oxide film/SiC structures or intensities of some bands are redistributed in the PL spectra of&#13;
the SiO₂/GaAs structure, as well as optical density of the oxide film/SiC structures changes.
</summary>
<dc:date>2014-01-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>Nucleation and growth kinetics of colloidal nanoparticles CdS:Mn in aqueous solution of polyvinyl alcohol</title>
<link href="http://dspace.nbuv.gov.ua:80/handle/123456789/118512" rel="alternate"/>
<author>
<name>Rudko, G.Yu.</name>
</author>
<author>
<name>Fediv, V.I.</name>
</author>
<author>
<name>Savchuk, A.I.</name>
</author>
<author>
<name>Gule, E.G.</name>
</author>
<author>
<name>Vorona, I.P.</name>
</author>
<author>
<name>Nosenko, V.V.</name>
</author>
<id>http://dspace.nbuv.gov.ua:80/handle/123456789/118512</id>
<updated>2017-05-31T00:07:40Z</updated>
<published>2014-01-01T00:00:00Z</published>
<summary type="text">Nucleation and growth kinetics of colloidal nanoparticles CdS:Mn in aqueous solution of polyvinyl alcohol
Rudko, G.Yu.; Fediv, V.I.; Savchuk, A.I.; Gule, E.G.; Vorona, I.P.; Nosenko, V.V.
Colloidal undoped CdS and doped CdS:Mn nanoparticles were synthesized in&#13;
the solution of polyvinyl alcohol polymer, and the process of nanoparticles growth was&#13;
monitored by optical absorption measurements. The inclusion of Mn²⁺ impurity was&#13;
checked by electron paramagnetic resonance measurements. It is shown that the core of&#13;
CdS:Mn nanoparticle is undoped. The results obtained demonstrated that the rate of the&#13;
band gap value decrease during nanoparticles growth is slower for the Mn-doped&#13;
nanoparticles as compared to the undoped ones. This effect was ascribed to the inhibition&#13;
of nanoparticles growth in the solution containing manganese salt. The model of the&#13;
adsorptive doping of CdS NPs with manganese was proposed.
</summary>
<dc:date>2014-01-01T00:00:00Z</dc:date>
</entry>
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